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Rigid Origami via Optical Programming and Deferred Self-Folding of a Two-Stage Photopolymer

机译:通过光学编程和两阶段光敏聚合物的递延自折叠进行刚性折纸

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We demonstrate the formation of shape-programmed, glassy origami structures using a single-layer photopolymer with two mechanically distinct phases. The latent origami pattern consisting of rigid, high cross-link density panels and flexible, low cross-link density creases is fabricated using a series of photomask exposures. Strong optical absorption of the polymer formulation creates depth-wise gradients in the cross-link density of the creases, enforcing directed folding which enables programming of both mountain and valley folds within the same sheet. These multiple photomask patterns can be sequentially applied because the sheet remains flat until immersed into a photopolymerizable monomer solution that differentially swells the polymer to fold and form the origami structure. After folding, a uniform photoexposure polymerizes the absorbed solution, permanently fixing the shape of the folded structure while simultaneously increasing the modulus of the folds. This approach creates sharp folds by mimicking the stiff panels and flexible creases of paper origami while overcoming the traditional trade-off of self-actuated materials that require low modulus for folding and high modulus for mechanical robustness. Using this process, we demonstrate a waterbomb base capable of supporting 1500 times its own weight.
机译:我们演示了使用具有两个机械上不同的相的单层光敏聚合物的形状编程的玻璃状折纸结构的形成。潜在的折纸图案由刚性,高交联密度的面板和柔性,低交联密度的折痕组成,是使用一系列光掩模曝光制成的。聚合物配方的强光吸收性在折痕的交联密度中产生沿深度方向的梯度,从而实现了定向折叠,从而可以对同一张纸上的山峰折谷进行编程。这些多个光掩模图案可以顺序施加,因为片材保持平坦,直到浸入到可光致聚合的单体溶液中为止,该溶液可差异溶胀聚合物以折叠并形成折纸结构。折叠后,均匀的曝光会使吸收的溶液聚合,从而永久固定折叠结构的形状,同时增加折叠模量。这种方法通过模仿纸张折纸的刚性面板和柔性折痕而形成了锐利的折痕,同时克服了传统的自驱动材料的折衷方法,该材料需要低模数的折叠和高模量的机械坚固性。使用此过程,我们演示了能够支撑自身重量1500倍的水炸弹底座。

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